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Tests collaboration habits and ability to incorporate feedback to improve code quality.
Tests experience with hardware integration, real-world constraints, and reliability in robotics deployments.
Tests practical software engineering experience and language tradeoffs for robotics systems.
Tests ability to identify bottlenecks and improve performance using profiling data.
Tests ownership, technical depth, and self-directed execution on ambiguous robotics problems.
Tests planning and prioritization skills to deliver across parallel robotics research efforts.
Tests ability to implement correct geometry and kinematics for robotics perception and autonomy.
Tests motivation and alignment with Carnegie Robotics' field robotics and autonomy mission.
Tests low-level debugging skills and systematic problem-solving in performance-critical code.
Tests understanding of coordinate frames and accuracy considerations for robotics autonomy.